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首页> 外文期刊>Biotechnology and Bioengineering >Glycosylation of an immunoglobulin produced from a murine hybridoma cell line: The effect of culture mode and the anti-apoptotic gene, bcl-2
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Glycosylation of an immunoglobulin produced from a murine hybridoma cell line: The effect of culture mode and the anti-apoptotic gene, bcl-2

机译:鼠杂交瘤细胞系产生的免疫球蛋白的糖基化:培养模式和抗凋亡基因bcl-2的作用

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The impact of bcl-2 over-expression on the glycosylation pattern of an antibody produced by a bcl-2 transfected hybridoma cell line (TB/C3.bcl-2) was investigated in suspension batch, continuous and high cell density culture (Flat hollow fibre, Tecnomouse system). In all culture modes bcl-2 over-expression resulted in higher cell viability. Analysis of the glycans from the IgG of batch cultures showed that >95% of the structures were neutral core fucosylated asialo biantennary oligosaccharides with variable terminal galactosylation (G0f, G1f and G2f) consistent with previous analysis of glycans from the conserved site at Asn-297 of the IgG protein. The galactosylation index (GI) was determined as an indicator of the glycan profile (=(G2 + 0.5* G1)/(G0 + G1 + G2)). GI values in control cultures were comparable to bcl-2 cultures during exponential growth (0.53) but declined toward the end of the culture when there was a loss in cell viability. Low dilution rates in chemostat culture were associated with reduced galactosylation of the IgG glycans in both cell lines. However, at the higher dilution rates the GI for IgG was consistently higher in the TB/C3.bcl-2 cultures. In the hollow fibre bioreactor the galactosylation of the IgG glycans was considerably lower than in suspension batch or continuous cultures with GI values averaging 0.38. Similar low galactosylation values have been found previously for high density cell cultures and these are consistent with the low values obtained when the dissolved oxygen level is maintained at a low value (10%) in controlled suspension cultures of hybridomas.
机译:在悬浮,分批,连续和高细胞密度培养(平空心)中研究了bcl-2过表达对bcl-2转染的杂交瘤细胞系(TB / C3.bcl-2)产生的抗体的糖基化模式的影响。纤维,Tecnomouse系统)。在所有培养模式中,bcl-2的过度表达导致更高的细胞活力。分批培养物的IgG中的聚糖分析表明,> 95%的结构为中性岩藻糖基化无唾液酸双触角寡糖,末端半乳糖基化程度不同(G0f,G1f和G2f),与先前对Asn-297保守位点的聚糖分析一致IgG蛋白。确定半乳糖基化指数(GI)作为聚糖谱的指标(=(G2 + 0.5 * G1)/(G0 + G1 + G2))。在指数生长期间,对照培养物中的GI值与bcl-2培养物相当(0.53),但是当细胞活力丧失时,其值在培养结束时下降。在恒化器培养物中低的稀释率与两种细胞系中IgG聚糖的半乳糖基化减少有关。但是,在更高的稀释率下,TB / C3.bcl-2培养物中IgG的GI始终较高。在中空纤维生物反应器中,IgG聚糖的半乳糖基化明显低于悬浮液或连续培养中的GI值平均为0.38。对于高密度细胞培养物,先前已经发现了类似的低半乳糖基化值,这与在杂交瘤的受控悬浮培养物中将溶解氧水平维持在低值(10%)时获得的低值一致。

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